Wykaz publikacji wybranego autora

Paulina Maziarz, dr inż.

asystent

Wydział Geologii, Geofizyki i Ochrony Środowiska
WGGiOŚ-kmpig, Katedra Mineralogii, Petrografii i Geochemii


  • 2020

    [dyscyplina 1] dziedzina nauk ścisłych i przyrodniczych / nauki o Ziemi i środowisku


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0003-3773-7252 połącz konto z ORCID

ResearcherID: H-3339-2018

Scopus: 57191850249

PBN: 5f895c5b085dcb410a25f09c

OPI Nauka Polska



Statystyka obejmuje publikacje afiliowane AGH od 2008 roku włącznie

typ publikacji
rocznikl. publ.książkifragm.referatyartykułypatentymapyred. czas.inne
ogółem281612
2022211
202033
20191156
2018541
2017422
2016312
język publikacji
rocznikrazempolskojęzyczneanglojęzycznepozostałe języki
ogółem2828
202222
202033
20191111
201855
201744
201633
kraj wydania
rocznikrazempubl. krajowepubl. zagraniczne
ogółem28622
202222
202033
201911110
2018523
2017422
2016312
Lista Filadelfijska
rocznikrazempubl. z LFpubl. pozostałe
ogółem28820
2022211
202033
20191165
201855
201744
2016312
punktacja MNiSW
rocznikrazempubl. z pkt. MNiSWpubl. pozostałe
ogółem281018
2022211
202033
20191165
201855
2017422
2016312
publikacje recenzowane
rocznikrazempubl. recenzowanepubl. nierecenzowane
ogółem281513
2022211
202033
20191183
2018523
2017422
2016321



1
  • Application of halloysite impregnated with $Fe^{0}$ particles for acid mine drainage water treatment
2
  • Effectiveness of As(V) removal from wastewaters by layered double hydroxides impregnated with Fe oxide
3
  • Efficiency of Pb(II) and Mo(VI) removal by kaolinite impregnated with zero-valent iron particles
4
  • Enhanced removal efficiency of Pb(II) and Cd(II) by kaolin impregnated with zerovalent iron particles
5
  • Enhanced sulphate removal by precipitation and adsorption using $Ca(OH)_{2}$ and synthetic layered double hydroxide: acid mine drainage case study
6
  • Granulated and functionalized halloysite for anions adsorption
7
  • Halloysite composites with $Fe_{3}O_{4}$ particles: the effect of impregnation on the removal of acqueous Cd(II) and Pb(II)
8
  • Halloysite-LDH heterostructured materials: performance in removal of selected anions from aqueous solutions
9
  • Halloysite-supported iron oxide particles for As(V) removal: adsorption mechanism investigation by the XPS and Mössbauer spectroscopy
10
  • Halloysite-zero-valent iron nanocomposites for removal of Pb(II)/Cd(II) and As(V)/Cr(VI): competitive effects, regeneration possibilities and mechanisms
11
12
  • Kaolin particles coated with zero-valent iron – competitive adsorption of Pb/Cd, regeneration and reuse possibilities
13
  • Layered minerals as supports for magnetite nanoparticles and their use for aqueous As(V) removal
14
  • Maghemite particles supported on halloysite as magnetically responsive composites for effcient As(V) removal
15
  • Mg/Al LDH enhances sulfate removal and clarification of AMD wastewater in precipitation processes
16
  • One-pot synthesis of magnetic composites based on synthetic hydrotalcite
17
  • Performance of halloysite-Mg/Al LDH materials for aqueous As(V) and Cr(VI) removal
18
  • Removal of anionic contaminants from wastewaters using functionalized mineral adsorbent in a fixed-bed column installation
19
20
  • Surfactant intercalated smectite group minerals: the effect of host mineral and surfactant type on the styrene adsorption/desorption
21
22
  • The effect of acid activation and calcination of halloysite on the efficiency and selectivity of Pb(II), Cd(II), Zn(II) and As(V) uptake
23
  • The effect of experimental factors on alkali activation of halloysite
24
  • The influence of alkali concentration and temperature on chemical activation of halloysite
25
  • The LDH-based magnetic nanocomposites for the removal of As(V) and Mo(VI) anionic species